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室温下几层石墨烯/2H-TaS异质结构中的门控可调可逆 Rashba-埃德尔斯坦效应

Gate-Tunable Reversible Rashba-Edelstein Effect in a Few-Layer Graphene/2H-TaS Heterostructure at Room Temperature.

作者信息

Li Lijun, Zhang Jin, Myeong Gyuho, Shin Wongil, Lim Hongsik, Kim Boram, Kim Seungho, Jin Taehyeok, Cavill Stuart, Kim Beom Seo, Kim Changyoung, Lischner Johannes, Ferreira Aires, Cho Sungjae

机构信息

Department of Physics, Korean Advanced Institute of Science and Technology, Daejeon 34141, Korea.

Departments of Materials and Physics, Imperial College London, London SW7 2AZ, United Kingdom.

出版信息

ACS Nano. 2020 May 26;14(5):5251-5259. doi: 10.1021/acsnano.0c01037. Epub 2020 Apr 20.

Abstract

We report the observation of current-induced spin polarization, the Rashba-Edelstein effect (REE), and its Onsager reciprocal phenomenon, the spin galvanic effect (SGE), in a few-layer graphene/2H-TaS heterostructure at room temperature. Spin-sensitive electrical measurements unveil full spin-polarization reversal by an applied gate voltage. The observed gate-tunable charge-to-spin conversion is explained by the ideal work function mismatch between 2H-TaS and graphene, which allows for a strong interface-induced Bychkov-Rashba interaction with a spin-gap reaching 70 meV, while keeping the Dirac nature of the spectrum intact across electron and hole sectors. The reversible electrical generation and control of the nonequilibrium spin polarization vector, not previously observed in a nonmagnetic material, are elegant manifestations of emergent two-dimensional Dirac Fermions with robust spin-helical structure. Our experimental findings, supported by first-principles relativistic electronic structure and transport calculations, demonstrate a route to design low-power spin-logic circuits from layered materials.

摘要

我们报告了在室温下,在几层石墨烯/2H-TaS异质结构中对电流诱导的自旋极化、 Rashba-Edelstein效应(REE)及其Onsager互易现象——自旋能斯特效应(SGE)的观测结果。自旋敏感电学测量揭示了通过施加栅极电压实现的完全自旋极化反转。观测到的栅极可调电荷到自旋的转换可以通过2H-TaS与石墨烯之间理想的功函数失配来解释,这允许产生强界面诱导的拜奇科夫- Rashba相互作用,自旋能隙达到70毫电子伏特,同时在电子和空穴区域保持光谱的狄拉克性质不变。非平衡自旋极化矢量的可逆电产生和控制,这在非磁性材料中以前未曾观察到,是具有稳健自旋螺旋结构的新兴二维狄拉克费米子的优雅表现。我们的实验结果,得到第一性原理相对论电子结构和输运计算的支持,展示了一种从层状材料设计低功耗自旋逻辑电路的途径。

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